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Influence of Particle Gradation and Shape on the Performance of Stone Columns in Soft Clay

机译:颗粒等级和形状对软黏土中石柱性能的影响

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A stone column typically consists of particles whose influence has largely been overlooked in design practice in terms of stress transfer, pattern of deformation, and intrusion of fines (clogging). This article presents an experimental study on the load-deformation behavior of a model stone column installed in soft clay with a particular emphasis on the influence of particle gradation and shape under undrained loading. The results show that particle gradation and shape have a significant influence on the load-deformation behavior and the extent of fines intrusion into the stone columns. Relatively well-graded particle sizes favor the development of higher peak shear stresses accompanied by lateral bulging, whereas more uniform grading results in the development of distinct shear planes and smaller peak shear stresses. Deformed columns were also examined using computed tomography, and the porosity profiles at the end of the test were determined using micrographs. Maximum porosity typically occurred in the zone of extreme lateral deformation, with the results suggesting that the extent of fines intrusion was influenced by particle morphology.
机译:石柱通常由颗粒组成,这些颗粒的影响在应力传递,变形模式和细屑侵入(堵塞)方面在设计实践中被忽略了。本文提供了对安装在软粘土中的模型石柱的荷载-变形行为的实验研究,特别强调了不排水荷载下颗粒等级和形状的影响。结果表明,颗粒的等级和形状对载荷-变形行为和细粉侵入石柱的程度有显着影响。相对较好的梯度粒度有利于产生更高的峰值剪切应力,并伴随横向凸出,而更均匀的分级则导致出现独特的剪切平面和较小的峰值剪切应力。还使用计算机断层扫描检查了变形的色谱柱,并使用显微照片确定了测试结束时的孔隙率分布。最大孔隙率通常发生在最大的横向变形区域,结果表明,细粒侵入的程度受颗粒形态的影响。

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